Literature DB >> 33186754

Two VOZ transcription factors link an E3 ligase and an NLR immune receptor to modulate immunity in rice.

Jiyang Wang1, Ruyi Wang1, Hong Fang2, Chongyang Zhang2, Fan Zhang2, Zeyun Hao2, Xiaoman You2, Xuetao Shi2, Chan Ho Park3, Kangyu Hua3, Feng He2, Maria Bellizzi3, Kieu Thi Xuan Vo4, Jong-Seong Jeon4, Yuese Ning5, Guo-Liang Wang6.   

Abstract

Nucleotide-binding leucine-rich repeat (NLR) proteins play critical roles in plant immunity. However, how NLRs are regulated and activate defense signaling is not fully understood. The rice (Oryza sativa) NLR receptor Piz-t confers broad-spectrum resistance to the fungal pathogen Magnaporthe oryzae and the RING-type E3 ligase AVRPIZ-T INTERACTING PROTEIN 10 (APIP10) negatively regulates Piz-t accumulation. In this study, we found that APIP10 interacts with two rice transcription factors, VASCULAR PLANT ONE-ZINC FINGER 1 (OsVOZ1) and OsVOZ2, and promotes their degradation through the 26S proteasome pathway. OsVOZ1 displays transcriptional repression activity while OsVOZ2 confers transcriptional activation activity in planta. The osvoz1 and osvoz2 single mutants display modest but opposite M. oryzae resistance in the non-Piz-t background. However, the osvoz1 osvoz2 double mutant exhibits strong dwarfism and cell death, and silencing of both genes via RNA interference also leads to dwarfism, mild cell death, and enhanced resistance to M. oryzae in the non-Piz-t background. Both OsVOZ1 and OsVOZ2 interact with Piz-t. Double silencing of OsVOZ1 and OsVOZ2 in the Piz-t background decreases Piz-t protein accumulation and transcription, reactive oxygen species-dependent cell death, and resistance to M. oryzae containing AvrPiz-t. Taken together, these results indicate that OsVOZ1 and OsVOZ2 negatively regulate basal defense but contribute positively to Piz-t-mediated immunity.
Copyright © 2020 The Authors. Published by Elsevier Inc. All rights reserved.

Entities:  

Keywords:  E3 ligase; NLR protein; VOZ transcription factor; cell death; fungal pathogen Magnaporthe oryzae; rice

Mesh:

Substances:

Year:  2020        PMID: 33186754     DOI: 10.1016/j.molp.2020.11.005

Source DB:  PubMed          Journal:  Mol Plant        ISSN: 1674-2052            Impact factor:   13.164


  7 in total

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  7 in total

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